首页> 外文会议>ASME 1st international offshore wind technical conference >PARAMETRIC STUDY OF A COUNTER WEIGHT SUSPENSION SYSTEM FOR THE TETRASPAR FLOATING WIND TURBINE
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PARAMETRIC STUDY OF A COUNTER WEIGHT SUSPENSION SYSTEM FOR THE TETRASPAR FLOATING WIND TURBINE

机译:四叶形浮动风轮的反重力悬挂系统的参数研究

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New floating wind turbine designs are needed to reduce production costs and to increase mass production feasibility. The TetraSpar floating wind turbine achieves these goals by being constructed using components highly suitable for standardization and industrialization. The design makes use of a suspended submerged counter weight to obtain a low center of gravity of the floating system, while also allowing a low draft during transport and installation. This novel concept requires a multibody modeling approach to perform a dynamic load and response analysis, as the stiffness between the floating platform and the counter weight is provided by chains. Additional design criteria are required for the counter weight system dependent on a combination of chain capacity and maintaining positive tension in all of the lines. To satisfy these design criteria a global hydrodynamic load and response analysis of the floater and counter weight is performed. In this concept, the counter weight depth contributes significantly to the dynamic properties of the system and therefore a parametric study is conducted. The global response parameters of the rigid- body motion natural frequencies, nacelle accelerations, counter weight chain tensions, and maximum platform-pitch angles are compared. Design recommendations are made for the configuration of counter weight depth and suspension system layout.
机译:需要新的浮动风力涡轮机设计以降低生产成本并增加批量生产的可行性。 TetraSpar浮动风力涡轮机通过使用高度适合标准化和工业化的组件进行构造来实现这些目标。该设计利用悬挂式沉没配重来获得浮动系统的低重心,同时在运输和安装过程中也允许较低的吃水深度。这个新颖的概念需要一种多体建模方法来执行动态载荷和响应分析,因为浮动平台和配重之间的刚度由链条提供。配重系统需要附加的设计标准,具体取决于链条容量和在所有生产线中保持正张力的组合。为了满足这些设计标准,进行了浮子和配重的整体流体动力载荷和响应分析。在这个概念中,配重深度对系统的动态特性有很大的贡献,因此进行了参数研究。比较了刚体运动固有频率,机舱加速度,配重链张力和最大平台俯仰角的整体响应参数。针对配重深度和悬挂系统布局的配置提出了设计建议。

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